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1.
以2-溴吡啶为原料通过卤素跳舞、Kharash和Stille 偶联反应获得了4,4”-二-(4-甲基苯基)-2,2’:6’,2”-三联吡啶(DPTP),将其作为配体合成了相应的N,N,N-4,4”-二­-(4-甲基苯基)-2,2’:6’,2”-三联吡啶-N,N,N –三异硫氰钌配合物(Ru-DPTP),并通过IR、UV-Vis、ESI-MS和元素分析表征。随着汞离子的加入,Ru-DPTP溶液的最大MLCT态吸收峰由570 nm蓝移到了500 nm,而其它离子对其光谱没有影响,这表明Ru-DPTP可作为汞离子的选择性比色传感器。  相似文献   

2.
以2,2′∶6′,2″-三联吡啶(L1)为基础,通过引入不同的空穴传输基团合成了4′-咔唑基-2,2′∶6′,2″-三联吡啶(L2),4′-二苯基胺基-2,2′∶6′,2″-三联吡啶(L3),4′-二(4-叔丁基苯基)胺基-2,2′∶6′,2″-三联吡啶(L4),4′-(N-苯基-1-萘基)胺基-2,2′∶6′,2″-三联吡啶(L5),4′-(N-苯基-2-萘基)胺基-2,2′∶6′,2″-三联吡啶(L6)5个N,N,N-三齿中性配体,然后以三氟乙酰噻吩丙酮(HTTA)作为第一配体合成了6种铕配合物。在369~373 nm激发条件下,配合物都表现出铕离子5D0-7FJ(J=0,1,2,3,4)的特征发射。引入不同的空穴传输基团后,在铕离子的周围形成了"光吸收天线"(light-harvesting antenna),不仅扩大了配合物吸收光能的范围、增强了配合物的吸收强度,而且提高了配合物的光致发光性能。其中含有咔唑基团的配合物具有最强的发光强度和最长的激发态寿命。  相似文献   

3.
新型桥连双卟啉化合物的合成及结构表征   总被引:7,自引:2,他引:5  
通过将4,4′-二羧基-2,2′-联吡啶、2,6-二溴甲基吡啶、2,6-二羟甲基吡啶和1,8-二氨基萘分别与5-(4-羟基苯基)-10,15,20-三苯基卟啉(1a)、5-(4-甲酰苯基)-10,15,20-三苯基卟啉(1b)和5-[4-(4′-溴代丁氧基)苯基]-10,15,20-三苯基卟啉(1c)反应,合成了3类新型的双卟啉化合物2a-2e,经IR,1HNMR,MS,UV-Vis光谱及元素分析对中间体和目标化合物的结构进行了表征.  相似文献   

4.
李襄宏 《无机化学学报》2010,26(8):1389-1393
合成了2个新的含1,3,4-噁二唑官能团的联吡啶配体及其相应的钌髤配合物Ru(CPOD)(dcbpy)(NCS)2(Ru-1)和Ru(DPOD)(dcbpy)(NCS)2(Ru-2)(CPOD=4-羧基-4′-[2-(4-壬氧基苯基)-5-苯基-1,3,4-噁二唑]-2,2′-二联吡啶,DPOD=4,4′-二[2-(4-壬氧基苯基)-5-苯基-1,3,4-噁二唑]-2,2′-二联吡啶,dcbpy=4,4′-二羧基-2,2′-二联吡啶),并通过红外光谱、循环伏安、紫外可见吸收光谱、元素分析和光电流-光电压曲线实验对其结构和光电转化性质进行了表征。这些配合物的最大MLCT态吸收位于555nm,摩尔消光系数可达1.43×104L·mol-1·cm-1。它们的光化学和电化学性质表明:激发态能级与TiO2导带底能级匹配,电子能够注入到TiO2导带中。将它们敏化到纳米晶TiO2电极上,光电转化效率为2.4%。  相似文献   

5.
以4,4′-二溴-2,2′-联吡啶、3,5-二甲基苯硼酸、2,4-二氟苯硼酸为原料,制得两个联吡啶衍生物(L1, L2);以2-氯喹啉和3,5-二甲基苯硼酸为原料制得主配体2-(3,5-二甲基苯基)喹啉;主配体与IrCl3反应制得二聚体[Ir(mqu)2(μ-Cl2)]2;二聚体分别与L1和L2反应合成了两种可用于LECs的以铱为内核的新型离子型铱配合物(Ir-1, Ir-2),其结构经1H NMR, IR, MS(ESI)和元素分析表征。并对其光物理性能和热稳定性能进行了研究。结果表明:配合物Ir-1的CIE坐标为(0.58, 0.42)、 Ir-2的CIE坐标为(0.61, 0.39),二者的最大发射波长分别位于591和623 nm处;配合物Ir-1和Ir-2均具有较好的热稳定性能,分解温度分别为339 ℃和340 ℃。  相似文献   

6.
合成了一种-2,2′∶6′,2″-三联吡啶衍生物,4′-对二甲氨基苯基-2,2′∶6′,2″-三联吡啶(L),利用L与锌离子形成的稳定配合物(ZnL),用紫外可见吸收光谱和荧光光谱研究了在无水乙醇和含水乙醇介质中各种阴离子对该配合物ZnL的吸收光谱和荧光发射光谱的影响,发现该配合物能在含水乙醇介质中选择性的识别磷酸根类离子。磷酸根、磷酸氢根与磷酸二氢根离子分别与ZnL配合物以1∶1、2∶1及2∶1结合模式影响体系的吸收和荧光发射,ZnL配合物对磷酸根类离子的识别作用主要源于配合物多余的结合位点。  相似文献   

7.
以2,6-二(溴甲基)吡啶-3,5-二甲酸二乙酯为起始原料,经溴化、取代、加成及酸化反应合成了两种铕穴状荧光螯合剂Eu3+ 2,6-{N,N′,N,N′-[二(2,2′-联吡啶-6,6′-二甲基)]二(氨甲基)}-吡啶-二羧酸[Eu3+ bpy.bpy.py(CO2H)2, 1]和Eu3+2,6-{N,N′,N,N′-[二(2,2′ 联吡啶-6,6′-二甲基)]二(氨甲基)}-吡啶-二[N-(2-氨基乙基)酰胺]{Eu3+bpy.bpy.py[CONH(CH2)2NH2]2, 2},其结构和性能经1H NMR, MS(ESI)和荧光光谱表征。结果表明:1的最佳激发波长为312 nm,发射特征峰位于598和615 nm,荧光寿命为1 064 μs,量子产量为10%。 2的最佳激发波长为311 nm,发射特征峰位于597和616 nm,荧光寿命为398 μs,量子产率为12.1%。  相似文献   

8.
由于极短的激发态寿命, 钌(II)三联吡啶配合物对脱氧核糖核酸(DNA)的光损伤能力低下. 设计合成了三个钌(II)三联吡啶配合物[Ru(ttp)(tpy)]2+ (1), [Ru(ttp-COOH)(tpy)]2+ (2)和[Ru(ttp-COOH)(tpy-pyr)]2+ (3), 其中tpy为2,2':6',2"-三联吡啶, ttp为4′-(4-甲苯基)-2,2':6',2"-三联吡啶, ttp-COOH为4′-(4-羧基苯基)-2,2':6',2"-三联吡啶, tpy-pyr为4'-(1-芘基)-2,2':6',2"-三联吡啶. 比较了TiO2纳米颗粒对它们光损伤小牛胸腺DNA的影响. 发现TiO2纳米颗粒在空气和氩气条件下均可显著提高配合物3光损伤DNA的能力. TiO2纳米颗粒和配合物3间的光诱导电子转移作用及其该作用生成的钌(III)物种可能是促进配合物3对DNA光损伤的主要原因.  相似文献   

9.
介绍了OBE教育理念下以“离子型铱配合物的合成及性能研究”作为大学生创新实验训练项目的实施过程。实验内容以2-(4-氟苯基)吡啶、1-(4-氟苯基)异喹啉为主配体,4,4′-二叔丁基-2,2′-联吡啶为中性配体,六氟磷酸根为阴离子合成了2种离子型的铱配合物。2种配合物分别展现出绿光和红光发射,量子效率分别达到85%和73%。整个项目的实施过程以学生为中心,紧密联系科学研究的热点并结合专业理论知识,不仅培养了学生的科研兴趣和创新能力,也锻炼了学生的综合实验能力,取得了较好的学习效果。  相似文献   

10.
以4′-(2-苯并噻唑基)苯并-9-冠-3(BTZ9C3)为主配体,用2,2′-联吡啶(bpy)及3-三氟甲基-5-(2′-吡啶基)-1,2-二唑(Hfppz)辅助配体分别合成了离子型铱配合物[Ir(BTZ9C3)2(bpy)]PF6(1)和中性铱配合物[Ir(BTZ9C3)2(fppz)](2)。配合物的结构通过核磁、高分辨质谱进行了表征,并测定了配合物1的单晶结构。对它们光物理性能的研究表明,2种配合物掺杂在PMMA中的发光为黄绿光发射,配合物1的发光波长为535 nm,配合物2的发光波长为541 nm,发光量子效率分别为10.8%,45.0%,发光寿命分别为3.01和2.58μs,为典型的磷光发射。通过循环伏安法测得配合物1和2的HOMO能级分别为-5.60和-5.35 eV。2种配合物对Be2+都有发光增强的选择性识别效果,化学计量比为1∶2,最低检测限低至6.0μmol·L-1。抗干扰能力方面,离子型配合物1的抗干扰能力较好,而中性配合物2受Al3+的干扰较大。  相似文献   

11.
以4,4'-二硝基-6,6'-二甲基-2,2'-联吡啶-N,N'-二氧化物为起始原料,经过三氟乙酸酐酯化、羟甲基化、氢溴酸溴甲基化及亚氨基二乙酸二乙酯氢胺基甲基化合成了4,4'-二溴-6,6'-二(N,N-二(乙氧基羰甲基)氨甲基)-2,2'-联吡啶。通过熔点、红外光谱、核磁共振、高效液相色谱、高分辨质谱测试技术表征了该化合物的结构,为合成时间分辨荧光免疫分析新型双功能螯合剂提供了重要中间体。  相似文献   

12.
Amphiphilic ligands 4,4'-bis(1-adamantyl-aminocarbonyl)-2,2'-bipyridine (L(1)), 4,4'-bis[5-[N-[2-(3beta-cholest-5-en-3-ylcarbamate-N-yl)ethyl]aminocarbonyl]]-2,2'-bipyridine (L(2)), 4,4'-bis[5-[N-[2-(3beta-cholest-5-en-3-ylcarbamate-N-yl)propyl]aminocarbonyl]]-2,2'-bipyridine (L(3)), and 4,4'-bis(dodecan-12-ol)-2,2'-bipyridine (L(4)) and their heteroleptic ruthenium(II) complexes of the type [Ru(II)LL(1)(NCS)(2)] (5), [Ru(II)LL(2)(NCS)(2)] (6), [Ru(II)LL(3)(NCS)(2)] (7), and [Ru(II)LL(4)(NCS)(2)] (8) (where L = 4,4'-bis(carboxylic acid)-2,2'-bipyridine) have been synthesized starting from dichloro(p-cymene)ruthenium(II) dimer. All the ligands and the complexes were characterized by analytical, spectroscopic, and electrochemical techniques. The performance of these complexes as charge-transfer photosensitizers in nanocrystalline TiO(2)-based solar cells was studied. When complexes 5-8 anchored onto a 12 + 4 microm thick nanocrystalline TiO(2) films, very efficient sensitization was achieved (85 +/- 5% incident photon-to-current efficiencies in the visible region, using an electrolyte consisting of 0.6 M butylmethylimidazolium iodide, 0.05 M I(2), 0.1 M LiI, and 0.5 M tert-butyl pyridine in 1:1 acetonitrile + valeronitrile). Under standard AM 1.5 sunlight, the complex 8 yielded a short-circuit photocurrent density of 17 +/- 0.5 mA/cm(2), the open-circuit voltage was 720 +/- 50 mV, and the fill factor was 0.72 +/- 0.05, corresponding to an overall conversion efficiency of 8.8 +/- 0.5%.  相似文献   

13.
Amphiphilic polypyridyl mthenium(Ⅱ) complex cis-di(isothiocyanato)(4,4'-di-tert-butyl-2,2'-bipyridyl)(4,4'- dicarboxy-2,2'-bipyridyl)ruthenium(Ⅱ)(K005) has been synthesized and characterized by cyclic voltammetry, ^1H NMR, UV-Vis, and FT-IR spectroscopies. The sensitizer sensitizes TiO2 over a notably broad spectral range due to its intense metal-to-ligand charge-transfer (MLCT) bands at 537 and 418 nm. The photophysical and photochemical studies of K005 were contrasted with those of cis-Ru(dcbpy)2(NCS)2, known as the N3 dye, and the amphiphilic ruthenium(Ⅱ) dye Z907. A reversible couple at E1/2=0.725 V vs. saturated calomel electrode (SCE) with a separation of 0.08 V between the anodic and cathodic peaks, was observed due to the Ru^Ⅱ/Ⅲ couple by cyclic voltammetry. Furthermore, this amphiphilic ruthenium complex was successfully used as sensitizers for dye-sensitized solar cells with the efficiency of 3.72% at the 100 mW·cm^-2 irradiance of air mass 1.5 simulated sunlight without optimization of TiO2 films and the electrolyte.  相似文献   

14.
A terpyridine derivative DPTP [di-(4-methylphenyl)-2,2':6',2"-terpyridine] was conveniently synthesized from 2-bromopyridine via halogen-dance reaction, Kharash coupling and Stille coupling reaction. Then its corresponding ruthenium complex Ru-DPTP [N,N,N-4,4''-di-(4-methy,phenyl)-2,2':6',2"-terpyridine-N,N,N-tris(is,-thi,cyanat,)- ruthenium(H) ammonium] was obtained and fully characterized by IR, UV-Vis, ESI MS and elemental analysis. The MLCT absorption band of Ru-DPTP was blue-shifted from 570 to 500 nm upon addition of Hg^2+. Among a series of surveyed metal ions, the complex showed a unique recognition to Hg^2+, indicating that it can be used as a selective colorimetric sensor for Hg^2+.  相似文献   

15.
新型一维麻花状超分子配合物的合成与结构   总被引:7,自引:1,他引:6  
具有特殊结构及性能的超分子化合物由于其结构上的新颖性及潜在的应用价值而成为人们关注的热点 .以一个苯环为间隔基两端含两个吡啶基团的配体 L1与 Pd( ) ,Pt( )形成 2 -索烃 [1 ] ,与Cd( NO3) 2 则形成具有一维平面结构的聚合物 [2 ] .以联苯为间隔基的配体 L2在 4 ,4′-二联吡啶共同作用下与 Pd( )形成 2 -索烃 [3] .同样以一个苯环为间隔基两端含两个咪唑基团的配体 L3与 Zn( NO3) 2 ,Ag NO3反应得到新型多聚轮烷配合物 [4,5 ] .研究结果表明 ,配体或配位金属离子等的微小差别即导致形成结构不同的超分子化合物 .但这些超分子…  相似文献   

16.
A heteroleptic polypyridyl ruthenium complex, cis-Ru(4,4'-bis(5-octylthieno[3,2-b]thiophen-2-yl)-2,2'-bipyridine)(4,4'-dicarboxyl-2,2'-bipyridine)(NCS)2, with a high molar extinction coefficient of 20.5 x 10(3) M(-1) cm(-1) at 553 nm has been synthesized and demonstrated as a highly efficient sensitizer for a dye-sensitized solar cell, giving a power conversion efficiency of 10.53% measured under an irradiation of air mass 1.5 global (AM 1.5G) full sunlight.  相似文献   

17.
A dual colorimetric and luminescent sensor based on a heteroleptic ruthenium dye[Ru(Hipdpa)(Hdcbpy)(NCS)_2]~-·0.5H~+ 0.5[N(C_4H_9)_4]~+ Ru(Hipdpa) {where Hdcbpy = monodeprotonted-4,4'-dicarboxy-2.2'-bipyridineand Hipdpa = 4-(1H-imidazo[4,5-f][l,10]phenanthroIin-2-yl)-N,N-diphenylaniIine} for selective detection of Hg~(2+) is presented.The results of spectrophotometric titrations revealed an evident luminescence intensity enhancement(I/I_0 =11) and a considerable blue shift in visible absorption and luminescence maxima with the addition of Hg~(2+).The sensitive response of the optical sensor on Hg~(2+) was attributed to the binding of the electron-deficient Hg~(2+) to the electron-rich sulfur atom of the thiocyanate(NCS) ligand in the Ru(Hipdpa).which led to an increase in the energy gap between the highest occupied molecular orbital(HOMO) and the lowest unoccupied molecular orbital(LUMO).Accordingly,the blue shift in the absorption spectrum of Ru(Hipdpa) due to the binding of Hg~(2+) was obtained.Ru(Hipdpa) was found to have decreased Hg~(2+) detection limit and improved linear region as compared to di(tetrabutylammonium) ris-bis(isothiocyanato)bis(2,2'-bipyridine-4-carboxylic acid-4'-carboxylate)ruthenium(Ⅱ) N719.Moreover,a dramatic color change from pink to yellow was observed,which allowed simple monitoring of Hg~(2+) by either naked eyes or a simple colorimetric reader.Therefore,the proposed sensor can provide potential applications for Hg~(2+) detection.  相似文献   

18.
A novel microporous coordination polymer [Co2(Hisor)2(4,4′-bpy)2(H2O)2]·4,4′-bpy was synthesized by hydrothermal reaction and characterized by single crystal X-ray diffraction, elemental analysis and IR spectrum. The crystal belongs to the monoclinic system and space group is P2/n with a=1.040 6(3) nm, b=1.138 8(4) nm, c=1.854 7(6) nm, β=102.991(6)°, V= 2.141 6(12) nm3, Z=2, Dc=1.443 Mg/m3, Mr=930.62, μ=0.842 mm-1, F(000)=952, GOF= 1.072, R=0.065 4, wR=0.146 8[I>2σ(I)]. There are two crystallographically independent Co(Ⅱ) ions in the title complex. The Hisor2- and 4,4′-bpy link the metal ions into 2D grids with dimension of 0.522 3 nm×1.138 8 nm. There are O—H…O and N—H…O hydrogen bonds in the complex resulting in the formation of 3D network with 1D channels, in which are free 4,4′-bpy molecules.  相似文献   

19.
Ionic liquids containing the nitrile and vinyl functional groups attached to imidazolium cations combined with various anions, e.g., iodide, bis[(trifluoromethyl)sulfonyl]imide ([TFSI]-), or dicyanamide ([N(CN)2]-), have been prepared and characterized. These ionic liquids have been successfully used as electrolytes for dye-sensitized solar cells based on nanocrystalline TiO2 with the amphiphilic ruthenium sensitizer [ruthenium (4,4'-dicarboxylic acid-2,2'-bipyridine)(4,4'-bis(p-hexyloxystyryl)-2,2'-bipyridine)][NCS]2 (coded K-19). The iodide salt was used in 3-methoxypropionitrile-based electrolytes, and the performances of both types of devices were evaluated on the basis of their photocurrent density-voltage characteristics and dark current measurements, demonstrating that the functional groups do not exert a detrimental effect on the performance. The solid-state structure of the nitrile-functionalized salt [C1C3CN(im)]I has also been established by single-crystal X-ray diffraction, revealing extensive hydrogen bonding between the cation protons and the iodide.  相似文献   

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